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1.
J Perinatol ; 42(11): 1504-1511, 2022 11.
Article in English | MEDLINE | ID: mdl-35927487

ABSTRACT

OBJECTIVE: To evaluate the associations between parental resilience and psychological distress during the neonatal intensive care unit (NICU) hospitalization. STUDY DESIGN: Observational cohort study of parents of preterm infants (n = 45) admitted to a NICU between December 2017-October 2019. Data on resilience and psychological distress were collected using validated scales. Regression analysis was used to evaluate associations. RESULT: One-third of NICU parents screened positive for depression or anxiety. There were no identified sociodemographic factors or parental engagement activities associated with resilience. Parents with higher resilience had lower scores on depression and anxiety screens. However, resilience alone was not a predictor for a positive depression or anxiety screen (aOR 0.93, CI 0.86-1.00; aOR 0.95, CI 0.89-1.02, respectively). CONCLUSION: Resilience may be associated with lower scores on depression and anxiety screens but is not an independent predictor for a positive screen during the early NICU hospitalization.


Subject(s)
Intensive Care Units, Neonatal , Psychological Distress , Infant , Infant, Newborn , Humans , Infant, Premature , Parents/psychology , Anxiety/psychology , Stress, Psychological
2.
Pharmacol Res ; 146: 104268, 2019 08.
Article in English | MEDLINE | ID: mdl-31078743

ABSTRACT

Novel therapeutic regulators of uterine contractility are needed to manage preterm labor, induce labor and control postpartum hemorrhage. Therefore, we previously developed a high-throughput assay for large-scale screening of small molecular compounds to regulate calcium-mobilization in primary mouse uterine myometrial cells. The goal of this study was to select the optimal myometrial cells for our high-throughput drug discovery assay, as well as determine the similarity or differences of myometrial cells to vascular smooth muscle cells (VSMCs)-the most common off-target of current myometrial therapeutics. Molecular and pharmacological assays were used to compare myometrial cells from four sources: primary cells isolated from term pregnant human and murine myometrium, immortalized pregnant human myometrial (PHM-1) cells and immortalized non-pregnant human myometrial (hTERT-HM) cells. In addition, myometrial cells were compared to vascular SMCs. We found that the transcriptome profiles of hTERT-HM and PHM1 cells were most similar (r = 0.93 and 0.90, respectively) to human primary myometrial cells. Comparative transcriptome profiling of primary human myometrial transcriptome and VSMCs revealed 498 upregulated (p ≤ 0.01, log2FC≥1) genes, of which 142 can serve as uterine-selective druggable targets. In the high-throughput Ca2+-assay, PHM1 cells had the most similar response to primary human myometrial cells in OT-induced Ca2+-release (Emax = 195% and 143%, EC50 = 30 nM and 120 nM, respectively), while all sources of myometrial cells showed excellent and similar robustness and reproducibility (Z' = 0.52 to 0.77). After testing a panel of 61 compounds, we found that the stimulatory and inhibitory responses of hTERT-HM cells were highly-correlated (r = 0.94 and 0.95, respectively) to human primary cells. Moreover, ten compounds were identified that displayed uterine-selectivity (≥5-fold Emax or EC50 compared to VSMCs). Collectively, this study found that hTERT-HM cells exhibited the most similarity to primary human myometrial cells and, therefore, is an optimal substitute for large-scale screening to identify novel therapeutic regulators of myometrial contractility. Moreover, VSMCs can serve as an important counter-screening tool to assess uterine-selectivity of targets and drugs given the similarity observed in the transcriptome and response to compounds.


Subject(s)
Drug Discovery , High-Throughput Screening Assays , Muscle, Smooth, Vascular/cytology , Myocytes, Smooth Muscle/metabolism , Myometrium/cytology , Adolescent , Adult , Animals , Cells, Cultured , Female , Humans , Mice , Middle Aged , Pregnancy , Transcriptome , Young Adult
3.
Reproduction ; 155(5): 447-456, 2018 05.
Article in English | MEDLINE | ID: mdl-29500186

ABSTRACT

In mouse models used to study parturition or pre-clinical therapeutic testing, measurement of uterine contractions is limited to either ex vivo isometric tension or operative intrauterine pressure (IUP). The goal of this study was to: (1) develop a method for transcervical insertion of a pressure catheter to measure in vivo intrauterine contractile pressure during mouse pregnancy, (2) determine whether this method can be utilized numerous times in a single mouse pregnancy without affecting the timing of delivery or fetal outcome and (3) compare the in vivo contractile activity between mouse models of term and preterm labor (PTL). Visualization of the cervix allowed intrauterine pressure catheter (IUPC) placement into anesthetized pregnant mice (plug = day 1, delivery = day 19.5). The amplitude, frequency, duration and area under the curve (AUC) of IUP was lowest on days 16-18, increased significantly (P < 0.05) on the morning of day 19 and reached maximal levels during by the afternoon of day 19 and into the intrapartum period. An AUC threshold of 2.77 mmHg discriminated between inactive labor (day 19 am) and active labor (day 19 pm and intrapartum period). Mice examined on a single vs every experimental timepoint did not have significantly different IUP, timing of delivery, offspring number or fetal/neonatal weight. The IUP was significantly greater in LPS-treated and RU486-treated mouse models of PTL compared to time-matched vehicle control mice. Intrapartum IUP was not significantly different between term and preterm mice. We conclude that utilization of a transcervical IUPC allows sensitive assessment of in vivo uterine contractile activity and labor progression in mouse models without the need for operative approaches.


Subject(s)
Catheters , Parturition/physiology , Premature Birth/physiopathology , Uterine Contraction/physiology , Animals , Disease Models, Animal , Female , Lipopolysaccharides/pharmacology , Mice , Mifepristone/pharmacology , Parturition/drug effects , Pregnancy , Pressure , Uterine Contraction/drug effects
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